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Full-Text Articles in Life Sciences

A Search For Parent-Of-Origin Effects On Honey Bee Gene Expression, Sarah D. Kocher, Jennifer M. Tsuruda, Joshua D. Gibson, Christine M. Emore, Miguel E. Arechavaleta-Velasco, David C. Queller, Joan E. Strassmann, Christina M. Grozinger, Michael R. Gribskov, Phillip San Miguel, Rick Westerman, Greg J. Hunt Aug 2015

A Search For Parent-Of-Origin Effects On Honey Bee Gene Expression, Sarah D. Kocher, Jennifer M. Tsuruda, Joshua D. Gibson, Christine M. Emore, Miguel E. Arechavaleta-Velasco, David C. Queller, Joan E. Strassmann, Christina M. Grozinger, Michael R. Gribskov, Phillip San Miguel, Rick Westerman, Greg J. Hunt

Biology Faculty Publications & Presentations

Parent-specific gene expression (PSGE) is little known outside of mammals and plants. PSGE occurs when the expression level of a gene depends on whether an allele was inherited from the mother or the father. Kin selection theory predicts that there should be extensive PSGE in social insects because social insect parents can gain inclusive fitness benefits by silencing parental alleles in female offspring. We searched for evidence of PSGE in honey bees using transcriptomes from reciprocal crosses between European and Africanized strains. We found 46 transcripts with significant parent-of-origin effects on gene expression, many of which overexpressed the maternal allele. …


Whole Genome Comparison Of A Large Collection Of Mycobacteriophages Reveals A Continuum Of Phage Genetic Diversity, Welkin Pope, Charles Bowman, Daniel Russell, Deborah Jacobs-Sera, David Asai, Steven Cresawn, William Jacobs, Roger Hendrix, Jeffrey Lawrence, Graham Hatfull, Sarah C.R. Elgin Apr 2015

Whole Genome Comparison Of A Large Collection Of Mycobacteriophages Reveals A Continuum Of Phage Genetic Diversity, Welkin Pope, Charles Bowman, Daniel Russell, Deborah Jacobs-Sera, David Asai, Steven Cresawn, William Jacobs, Roger Hendrix, Jeffrey Lawrence, Graham Hatfull, Sarah C.R. Elgin

Biology Faculty Publications & Presentations

The bacteriophage population is large, dynamic, ancient, and genetically diverse. Limited genomic information shows that phage genomes are mosaic, and the genetic architecture of phage populations remains ill-defined. To understand the population structure of phages infecting a single host strain, we isolated, sequenced, and compared 627 phages of Mycobacterium smegmatis. Their genetic diversity is considerable, and there are 28 distinct genomic types (clusters) with related nucleotide sequences. However, amino acid sequence comparisons show pervasive genomic mosaicism, and quantification of inter-cluster and intra-cluster relatedness reveals a continuum of genetic diversity, albeit with uneven representation of different phages. Furthermore, rarefaction analysis shows …